The constrained Hamiltonian systems admitting no gauge conditions are considered. The methods to deal with such systems are discussed and developed. As a concrete application, the relationship between the Dirac and reduced phase space quantizations is investigated for spin models belonging to the class of systems under consideration. It is traced out that the two quantization methods may give similar, or essentially different physical results, and, moreover, a class of constrained systems, which can be quantized only by the Dirac method, is discussed. A possible interpretation of the gauge degrees of freedom is given
We analyse two principal approaches to the quantization of physical models worked out to date. There...
In this paper, non-Hamiltonian systems with holonomic constraints are treated by a generalization of...
In the Dirac approach to the generalized Hamiltonian formalism, dynamical systems with first- and se...
The methods of reduced phase space quantization and Dirac quantization are examined in a simple gaug...
We show an equivalence between Dirac quantization and the reduced phase space quantization. The equi...
In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac ob...
In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac ob...
It has been known for some time that there are many inequivalent quantizations possible when the con...
The way of finding all the constraints in the Hamiltonian formulation of singular (in particular, ga...
A Lagrangian treatment of the quantization of first class Hamiltonian systems with constraints and H...
Dirac's approach to gauge symmetries is discussed. We follow closely the steps that led him from his...
Relevant physical models are described by singular Lagrangians, so that their Hamiltonian descriptio...
Dirac's approach to gauge symmetries is discussed. We follow closely the steps that led him from his...
A Lagrangian treatment of the quantization of first class Hamiltonian systems with constraints and H...
Geometric properties of operators of quantum Dirac constraints and physical observables are studied ...
We analyse two principal approaches to the quantization of physical models worked out to date. There...
In this paper, non-Hamiltonian systems with holonomic constraints are treated by a generalization of...
In the Dirac approach to the generalized Hamiltonian formalism, dynamical systems with first- and se...
The methods of reduced phase space quantization and Dirac quantization are examined in a simple gaug...
We show an equivalence between Dirac quantization and the reduced phase space quantization. The equi...
In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac ob...
In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac ob...
It has been known for some time that there are many inequivalent quantizations possible when the con...
The way of finding all the constraints in the Hamiltonian formulation of singular (in particular, ga...
A Lagrangian treatment of the quantization of first class Hamiltonian systems with constraints and H...
Dirac's approach to gauge symmetries is discussed. We follow closely the steps that led him from his...
Relevant physical models are described by singular Lagrangians, so that their Hamiltonian descriptio...
Dirac's approach to gauge symmetries is discussed. We follow closely the steps that led him from his...
A Lagrangian treatment of the quantization of first class Hamiltonian systems with constraints and H...
Geometric properties of operators of quantum Dirac constraints and physical observables are studied ...
We analyse two principal approaches to the quantization of physical models worked out to date. There...
In this paper, non-Hamiltonian systems with holonomic constraints are treated by a generalization of...
In the Dirac approach to the generalized Hamiltonian formalism, dynamical systems with first- and se...